JPH01225922A - Liquid crystal display device - Google Patents
Liquid crystal display deviceInfo
- Publication number
- JPH01225922A JPH01225922A JP63053005A JP5300588A JPH01225922A JP H01225922 A JPH01225922 A JP H01225922A JP 63053005 A JP63053005 A JP 63053005A JP 5300588 A JP5300588 A JP 5300588A JP H01225922 A JPH01225922 A JP H01225922A
- Authority
- JP
- Japan
- Prior art keywords
- liquid crystal
- nematic liquid
- crystal cell
- cell
- nematic
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 239000004973 liquid crystal related substance Substances 0.000 title claims abstract description 59
- 210000002858 crystal cell Anatomy 0.000 claims abstract description 56
- 239000004988 Nematic liquid crystal Substances 0.000 claims abstract description 48
- 210000004027 cell Anatomy 0.000 claims abstract description 5
- 239000000758 substrate Substances 0.000 claims description 15
- 238000010586 diagram Methods 0.000 description 5
- 230000003287 optical effect Effects 0.000 description 5
- 238000004519 manufacturing process Methods 0.000 description 2
- 230000000052 comparative effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000007740 vapor deposition Methods 0.000 description 1
Landscapes
- Liquid Crystal (AREA)
Abstract
Description
【発明の詳細な説明】
〔産業上の利用分野〕
本発明は液晶表示装置に関する。液晶表示装置は薄形化
、軽量化、省電力化が可能な表示装置としてポータプル
コンピュータ、ワードプロセッサ等に広く利用されてい
る。DETAILED DESCRIPTION OF THE INVENTION [Field of Industrial Application] The present invention relates to a liquid crystal display device. 2. Description of the Related Art Liquid crystal display devices are widely used in portable computers, word processors, etc. as display devices that can be made thinner, lighter, and more power efficient.
従来、対向して配置された2枚の電極基板間に120度
から330度の範囲でねじれ配向したネマチック液晶を
挟持してなる液晶セルと前記液晶セルを挟んで両側に配
置された一対の偏光板を備えている液晶表示装置(以下
STN (スーパーツィスティッドネマチック液晶表示
装置)と呼ぶ)が知られている。このSTNでは、表示
自体に着色がおこりコントラストに優れた白黒表示はで
きない、そこで白黒可能にするために前記ネマチック液
晶セル(以下筒1の液晶セルと呼ぶ)以外に、第2のネ
マチック液晶セル(以下筒2の液晶セルと呼ぶ)を前記
一対の偏光板の間に備えている液晶表示装置(以下NT
N にュートラライズド・ツィステッド・ネマチック液
晶表示装置)と呼ぶ)が提案されている。Conventionally, a liquid crystal cell consists of a nematic liquid crystal twisted and oriented in the range of 120 degrees to 330 degrees sandwiched between two electrode substrates placed facing each other, and a pair of polarized lights placed on both sides of the liquid crystal cell. 2. Description of the Related Art Liquid crystal display devices (hereinafter referred to as STN (super twisted nematic liquid crystal display devices)) equipped with a plate are known. In this STN, the display itself is colored and black and white display with excellent contrast cannot be achieved. Therefore, in order to make black and white possible, in addition to the nematic liquid crystal cell (hereinafter referred to as the liquid crystal cell of cylinder 1), a second nematic liquid crystal cell (hereinafter referred to as the liquid crystal cell of tube 1) is used. A liquid crystal display device (hereinafter referred to as NT
A neutralized twisted nematic liquid crystal display (called a neutralized twisted nematic liquid crystal display) has been proposed.
従来のNTNでは、第1の液晶セルと第2の液晶セルの
条件はネマチック液晶のねじれ方向以外を等しくしてい
た0例えばΔn−dやねじれ角である0表示を行う第1
の液晶セルは、表示装置のコントラストおよび応答スピ
ードを決定する。そのため、第1の液晶セルのネマチッ
ク液晶の層厚が約6から7μm未満にする必要があった
。それにより、色補償用の第2の液晶セルのネマチック
液晶の層厚も約6から7μm未満にしていた。In the conventional NTN, the conditions for the first liquid crystal cell and the second liquid crystal cell were to be equal except for the twist direction of the nematic liquid crystal.
The liquid crystal cell determines the contrast and response speed of the display device. Therefore, it was necessary that the layer thickness of the nematic liquid crystal in the first liquid crystal cell be less than about 6 to 7 μm. Thereby, the layer thickness of the nematic liquid crystal of the second liquid crystal cell for color compensation was also kept to be less than about 6 to 7 μm.
前述の従来技術では、第1の液晶セルおよび第2の液晶
セルのネマチック液晶の層厚を約6〜7μm未満と薄く
せざるを得なかったので、製造上、ネマチック液晶の層
Jγのバラツキが大きくなり、そのためNTNではST
Nに比べ、ネマチック液晶の層厚のバラツキが、色むら
として非常に目立つものであった。そこで本発明は、こ
のような課題を解決するものであり、その目的とすると
ころは表示部の色むらコントラストむらを低減する液晶
表示装置を堤供することにある。In the above-mentioned conventional technology, the layer thickness of the nematic liquid crystal in the first liquid crystal cell and the second liquid crystal cell had to be made thin to less than about 6 to 7 μm, so that the variation in the layer Jγ of the nematic liquid crystal was reduced during manufacturing. becomes larger, so in NTN ST
Compared to N, the variation in layer thickness of the nematic liquid crystal was very noticeable as color unevenness. SUMMARY OF THE INVENTION The present invention is intended to solve these problems, and an object of the present invention is to provide a liquid crystal display device that reduces color unevenness and contrast unevenness in a display section.
本発明の液晶表示装置は、対向して配置された2枚の電
極基板間に120度から330度の範囲でねじれ配向し
たネマチック液晶を挾持してなる液晶セルと前記液晶セ
ルを挟んで両側に配置された一対の偏光板を備え、前記
一対の偏光板の間に少なくとも1枚の前記ネマチック液
晶セル以外の第2のネマチック液晶セルを備えている液
晶表示装置において、第2のネマチック液晶セルのネマ
チック液晶の層厚が前記ネマチック液晶セルの層Hより
大きいことを特徴とする。The liquid crystal display device of the present invention includes a liquid crystal cell formed by sandwiching a nematic liquid crystal twisted and oriented in a range of 120 degrees to 330 degrees between two electrode substrates arranged facing each other, and a liquid crystal cell on both sides with the liquid crystal cell sandwiched therebetween. In a liquid crystal display device comprising a pair of polarizing plates arranged, and comprising at least one second nematic liquid crystal cell other than the nematic liquid crystal cell between the pair of polarizing plates, the nematic liquid crystal of the second nematic liquid crystal cell The layer thickness of the layer H is larger than that of the layer H of the nematic liquid crystal cell.
第1図は、本発明の液晶表示装置のfJI造をモデル的
に示した断面図である。第1図において、1は上側偏光
板、2は第2の液晶セル、3は第2の液晶セルの上側基
板、4は第2の液晶セルの下側基板、5は第2の液晶セ
ルのネマチック液晶、6は電圧印加により表示を行なう
第1の液晶セル、7は第1の液晶セルの上(l電極基板
、8は第1の液晶セルの下側電極基板、9は第1の液晶
セルのネマチック液晶、10は下側偏光板を示したちの
である。第1の液晶セルおよび第2の液晶セルの大きさ
は250mmX200IN1である。FIG. 1 is a sectional view schematically showing the fJI structure of the liquid crystal display device of the present invention. In FIG. 1, 1 is the upper polarizing plate, 2 is the second liquid crystal cell, 3 is the upper substrate of the second liquid crystal cell, 4 is the lower substrate of the second liquid crystal cell, and 5 is the second liquid crystal cell. Nematic liquid crystal; 6 is a first liquid crystal cell that performs display by applying a voltage; 7 is an electrode substrate on the first liquid crystal cell; 8 is a lower electrode substrate of the first liquid crystal cell; 9 is a first liquid crystal cell; The nematic liquid crystal of the cell, 10 indicates the lower polarizing plate.The dimensions of the first liquid crystal cell and the second liquid crystal cell are 250 mm x 200 IN1.
(実施例1)
第1の液晶セルのネマチック液晶9の層厚を約6.3μ
mにした。ネマチック液晶9の光学異方性Δnは0.1
3、ネマチック液晶9のねじれ角は200度である。第
2の液晶セルのネマチック液晶5は光学異方性Δnが0
.11、ねじれ角が200度、ねじれ方向がネマチック
液晶9のねじれ方向とは逆方向である。そのとき、ネマ
チック液晶5の層厚は約7.4μmとした。このときの
外観の色むらを第2図にCIE色度図で示す、同図に、
第2の液晶セル内の一番厚い層厚のところと薄い層厚の
ところおよびその間の層厚の部分2点、計4点の測定し
た値をプロットした。プロットした点のx、yの値が最
も大きい点が一番薄いところであり、x、yの値が最も
小さな点が一番厚いところである。(Example 1) The layer thickness of the nematic liquid crystal 9 of the first liquid crystal cell was approximately 6.3μ.
I made it m. The optical anisotropy Δn of the nematic liquid crystal 9 is 0.1
3. The twist angle of the nematic liquid crystal 9 is 200 degrees. The nematic liquid crystal 5 of the second liquid crystal cell has an optical anisotropy Δn of 0
.. 11. The twist angle is 200 degrees, and the twist direction is opposite to the twist direction of the nematic liquid crystal 9. At that time, the layer thickness of the nematic liquid crystal 5 was approximately 7.4 μm. The color unevenness of the appearance at this time is shown in the CIE chromaticity diagram in Figure 2.
Measured values were plotted at four points in total: the thickest layer thickness, the thinnest layer thickness, and two points at the layer thickness in between in the second liquid crystal cell. The point where the x, y values of the plotted points are the largest is the thinnest point, and the point where the x, y values are the smallest is the thickest point.
比較例として、実施例1を第2の液晶セルのネマチック
液晶5の光学異方性Δnを0.13、層厚を約6.3μ
mに変えた。このときの外観の色むらを第3図にCIE
色度図で示す。As a comparative example, Example 1 was used in which the optical anisotropy Δn of the nematic liquid crystal 5 of the second liquid crystal cell was 0.13 and the layer thickness was approximately 6.3μ.
Changed to m. Figure 3 shows the color unevenness of the exterior at this time.
Shown in a chromaticity diagram.
第2図、第3図より明らかなように、本実施例により色
むらが低減でき、品位向上が図れる。更に製造上の歩留
りを向上することが可能である。As is clear from FIGS. 2 and 3, this embodiment can reduce color unevenness and improve quality. Furthermore, it is possible to improve manufacturing yield.
(実施例2)
実施例1において、ネマチック液晶5の光学異方性Δn
を0.086、層厚を約10.0μmに変えた。すると
実施例1に比べ更に色むらは少なくなり、実用上はとん
ど問題でなくなった。(Example 2) In Example 1, the optical anisotropy Δn of the nematic liquid crystal 5
was changed to 0.086, and the layer thickness was changed to about 10.0 μm. As a result, the color unevenness was further reduced compared to Example 1, and was practically no longer a problem.
(実施例3)
実施例1において、第1の液晶セルのネマチック液晶9
のねじれ角を260度に変えた。外W4色は青色になっ
たものの、色むらは少ない。(Example 3) In Example 1, the nematic liquid crystal 9 of the first liquid crystal cell
The twist angle was changed to 260 degrees. Although the outer W4 color has become blue, there is little color unevenness.
(実施例4)
第1図において、第2の液晶セル2の上側基板3および
下側基板4に対向して配置する透明電極を備え、電圧印
加装置を備えた。更に実施例1において、第2の液晶セ
ルのネマチック液晶5の層厚を約10゜0μm、光学異
方性Δnを0.13に変えた。すると、第2の液晶セル
のネマチック液晶5の層厚が±0.2μmでばらついて
も色むらが目立たない、更に、第2の液晶セルに電圧を
印加すると、外観色が白くぬけ再び黒くなった。(Example 4) In FIG. 1, the second liquid crystal cell 2 was equipped with transparent electrodes disposed opposite to the upper substrate 3 and the lower substrate 4, and was equipped with a voltage application device. Further, in Example 1, the layer thickness of the nematic liquid crystal 5 of the second liquid crystal cell was changed to about 10°0 μm, and the optical anisotropy Δn was changed to 0.13. Then, even if the layer thickness of the nematic liquid crystal 5 of the second liquid crystal cell varies by ±0.2 μm, color unevenness is not noticeable.Furthermore, when a voltage is applied to the second liquid crystal cell, the external color fades to white and then becomes black again. Ta.
つまり、表示の明暗調整することが可能となった。In other words, it has become possible to adjust the brightness and darkness of the display.
(実施例5)
実施例2において、第2の液晶セルの上側基板3および
下側基板4に斜方蒸着を行ない、プレチルト角を約30
度つけた。その時、ネマチック液晶の層厚を約12μm
とすると、実施例2に比べ更に色むらが目立たなくなっ
た。(Example 5) In Example 2, oblique vapor deposition was performed on the upper substrate 3 and lower substrate 4 of the second liquid crystal cell, and the pretilt angle was set to about 30
I got it. At that time, the layer thickness of the nematic liquid crystal was approximately 12 μm.
As a result, color unevenness became even less noticeable compared to Example 2.
以上述べたように本発明によれば、表示部の色むらやコ
ントラストむらを低減することができる。As described above, according to the present invention, color unevenness and contrast unevenness in the display section can be reduced.
これにより、歩留り向上を図ることができる。Thereby, it is possible to improve the yield.
第1図は、本発明の液晶表示装置を示す図。
第2図は、本発明の一実施例におけるCIE色度図。
第3図は、従来の液晶表示装置におけるCIE色度図。
1・・・上側偏光板
2・・・第2の液晶セル
3・・・第2の液晶セルの上側基板
4・・・第2の液晶セルの下側基板
5・・・第2の液晶セルの液晶
6・・・第1の液晶セル
フ・・・第1の液晶セルの上ff!I電極基板8・・・
第1の液晶セルの下1lWI電極基板9・・・第1の液
晶セルの液晶
10・・・下側偏光板
以上
出願人 セイコーエプソン株式会社FIG. 1 is a diagram showing a liquid crystal display device of the present invention. FIG. 2 is a CIE chromaticity diagram in one embodiment of the present invention. FIG. 3 is a CIE chromaticity diagram of a conventional liquid crystal display device. 1... Upper polarizing plate 2... Second liquid crystal cell 3... Upper substrate of the second liquid crystal cell 4... Lower substrate of the second liquid crystal cell 5... Second liquid crystal cell Liquid crystal 6...first liquid crystal self...above the first liquid crystal cellff! I electrode substrate 8...
Lower 1lWI electrode substrate 9 of the first liquid crystal cell...Liquid crystal 10 of the first liquid crystal cell...Lower polarizing plate and above Applicant: Seiko Epson Corporation
Claims (1)
30度の範囲でねじれ配向したネマチック液晶を挾持し
てなるネマチック液晶セルと前記液晶セルを挟んで両側
に配置された一対の偏光板を備え、前記一対の偏光板の
間に少なくとも1枚の前記ネマチック液晶セル以外の第
2のネマチック液晶セルを備えている液晶表示装置にお
いて、前記第2のネマチック液晶セルのネマチック液晶
の層厚が前記ネマチック液晶セルの層厚より大きいこと
を特徴とする液晶表示装置。From 120 degrees to 3 degrees between two electrode substrates placed facing each other
A nematic liquid crystal cell comprising a nematic liquid crystal sandwiching a nematic liquid crystal twisted in a range of 30 degrees, and a pair of polarizing plates disposed on both sides of the liquid crystal cell, with at least one sheet of the nematic liquid crystal between the pair of polarizing plates. A liquid crystal display device comprising a second nematic liquid crystal cell other than the cell, wherein a layer thickness of the nematic liquid crystal of the second nematic liquid crystal cell is larger than a layer thickness of the nematic liquid crystal cell.
Priority Applications (6)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP63053005A JPH01225922A (en) | 1988-03-07 | 1988-03-07 | Liquid crystal display device |
KR1019880016308A KR960007791B1 (en) | 1987-12-10 | 1988-12-08 | Electro-optical device |
US07/282,222 US5119216A (en) | 1987-12-10 | 1988-12-09 | Electro-optical device |
EP88311677A EP0320283B1 (en) | 1987-12-10 | 1988-12-09 | Electro-optical device |
DE3889720T DE3889720T2 (en) | 1987-12-10 | 1988-12-09 | Electro-optical device. |
HK108397A HK108397A (en) | 1987-12-10 | 1997-06-26 | Electro-optical device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP63053005A JPH01225922A (en) | 1988-03-07 | 1988-03-07 | Liquid crystal display device |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH01225922A true JPH01225922A (en) | 1989-09-08 |
Family
ID=12930799
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP63053005A Pending JPH01225922A (en) | 1987-12-10 | 1988-03-07 | Liquid crystal display device |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH01225922A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH01245218A (en) * | 1988-03-26 | 1989-09-29 | Citizen Watch Co Ltd | Liquid crystal display device |
JPH03118513A (en) * | 1989-09-29 | 1991-05-21 | Sharp Corp | Liquid crystal display device |
-
1988
- 1988-03-07 JP JP63053005A patent/JPH01225922A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH01245218A (en) * | 1988-03-26 | 1989-09-29 | Citizen Watch Co Ltd | Liquid crystal display device |
JPH03118513A (en) * | 1989-09-29 | 1991-05-21 | Sharp Corp | Liquid crystal display device |
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